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破坏膜胆固醇组织会损害 PIEZO1 通道簇的活性。

Disruption of membrane cholesterol organization impairs the activity of PIEZO1 channel clusters.

机构信息

The Victor Chang Cardiac Research Institute, Darlinghurst, NSW, Australia.

Biomedical Imaging Facility, Mark Wainwright Analytical Centre, Lowy Cancer Research Centre, The University of New South Wales, Sydney, NSW, Australia.

出版信息

J Gen Physiol. 2020 Aug 3;152(8). doi: 10.1085/jgp.201912515.

Abstract

The human mechanosensitive ion channel PIEZO1 is gated by membrane tension and regulates essential biological processes such as vascular development and erythrocyte volume homeostasis. Currently, little is known about PIEZO1 plasma membrane localization and organization. Using a PIEZO1-GFP fusion protein, we investigated whether cholesterol enrichment or depletion by methyl-β-cyclodextrin (MBCD) and disruption of membrane cholesterol organization by dynasore affects PIEZO1-GFP's response to mechanical force. Electrophysiological recordings in the cell-attached configuration revealed that MBCD caused a rightward shift in the PIEZO1-GFP pressure-response curve, increased channel latency in response to mechanical stimuli, and markedly slowed channel inactivation. The same effects were seen in native PIEZO1 in N2A cells. STORM superresolution imaging revealed that, at the nanoscale, PIEZO1-GFP channels in the membrane associate as clusters sensitive to membrane manipulation. Both cluster distribution and diffusion rates were affected by treatment with MBCD (5 mM). Supplementation of polyunsaturated fatty acids appeared to sensitize the PIEZO1-GFP response to applied pressure. Together, our results indicate that PIEZO1 function is directly dependent on the membrane composition and lateral organization of membrane cholesterol domains, which coordinate the activity of clustered PIEZO1 channels.

摘要

人类机械敏感性离子通道 PIEZO1 由膜张力门控,调节血管发育和红细胞体积稳态等基本生物过程。目前,人们对 PIEZO1 的质膜定位和组织知之甚少。我们使用 PIEZO1-GFP 融合蛋白,研究了胆固醇的富集或耗尽(通过甲基-β-环糊精(MBCD))以及膜胆固醇组织的破坏(通过 dynasore)是否会影响 PIEZO1-GFP 对机械力的响应。细胞贴附构型中的电生理记录显示,MBCD 使 PIEZO1-GFP 压力响应曲线向右移动,增加了机械刺激下通道的潜伏期,并显著减慢了通道失活。在 N2A 细胞中的天然 PIEZO1 中也观察到了相同的效果。STORM 超分辨率成像显示,在纳米尺度上,质膜中的 PIEZO1-GFP 通道作为对膜操作敏感的簇聚集。簇分布和扩散率都受到 MBCD(5mM)处理的影响。多不饱和脂肪酸的补充似乎使 PIEZO1-GFP 对施加压力的反应更加敏感。总之,我们的结果表明,PIEZO1 的功能直接依赖于膜组成和膜胆固醇域的侧向组织,这些组织协调聚集的 PIEZO1 通道的活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e82/7398139/836b981c673a/JGP_201912515_Fig1.jpg

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